• 제목/요약/키워드: Basin model

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소규모 사각형 박지순환에 대한 유한해석법과 유한차분법의 비교연구 (A Comparative Study on Application of FAM and FDM to Small Rectangular Basin Circulation)

  • 최성열;조원철;이원환
    • 대한토목학회논문집
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    • 제14권6호
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    • pp.1341-1348
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    • 1994
  • 본 연구는 박지입구에서의 흐름이 갖는 전단력에 의해 발생하는 박지내의 순환현상을 파악하기 위한 기초적 연구로서, 이를 위해 유한해석법을 이용하여 박지유동모형을 구성하였으며, 이를 유한차분법에 의한 유동모형과 비교해 봄으로써 다음과 같은 성과를 얻었다. 격자간격이 Von Neumann 안정조건에 근접함에 따라 Askren의 유한차분법 모형에서는 정상상태로의 수렴시간이 길어졌으나 유한해석 모형에서는 보다 짧은 시간내에 정상상태로 수렴하는 것으로 나타났으며, 특히 격자간격이 안정조건을 넘는 영역에서 Askren의 유한차분 모형에서는 발산현상이 일어나는데 반해 유한해석 모형에서는 해가 수렴하는 것으로 나타났다. 또한 박지 Reynolds수가 큰 유동에 대해서는 유한해석법을 사용함으로써 보다 적은 계산단계에서 정상수치해를 얻을 수 있는 것으로 나타났다.

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경안천 유역에 대한 강수예보모델의 검증 및 수문모형활용 (Verification of Precipitation Forecast Model and Application of Hydrology Model in Kyoungan-chun Basin)

  • 최지혜;김영화;남경엽;오성남
    • 한국수자원학회논문집
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    • 제39권3호
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    • pp.215-226
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    • 2006
  • 본 연구에서는 경안천 유역에 대해 초단시간 강수예보모델인 VSRF(Very Short Range Forecast of precipitation) 모델에서 생산되는 예측강우량의 검증을 실시하고, 이를 NWSPC(National Weather Service PC) 강우-유출 모형에 적용하였다. 강수는 기상학적 검증과 수문학적 검증으로 구분하여 검증하였다. 기상학적 검증은 유역 내에 존재하는 AWS 강수량과 VSRF모델 강수량의 정성적 관계를 객관적으로 제시하였고, 수문학적 검증은 AWS 면적 가중치를 고려한 유역평균 강우량과 VSRF유역평균 강우량과의 정량적 검증결과를 제시하였다. 또한 예보모델에서 생산된 6시간 예측강수량을 NWSPC 모형에 적용해 강수예보모델의 수문연계 가능성을 검토해 본 결과 0.6 이상의 높은 상관관계를 보여 예보모델의 수자원 활용 가능성을 제시하였다.

Prediction model of surface subsidence for salt rock storage based on logistic function

  • Wang, Jun-Bao;Liu, Xin-Rong;Huang, Yao-Xian;Zhang, Xi-Cheng
    • Geomechanics and Engineering
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    • 제9권1호
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    • pp.25-37
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    • 2015
  • To predict the surface subsidence of salt rock storage, a new surface subsidence basin model is proposed based on the Logistic function from the phenomenological perspective. Analysis shows that the subsidence curve on the main section of the model is S-shaped, similar to that of the actual surface subsidence basin; the control parameter of the subsidence curve shape can be changed to allow for flexible adjustment of the curve shape. By using this model in combination with the MMF time function that reflects the single point subsidence-time relationship of the surface, a new dynamic prediction model of full section surface subsidence for salt rock storage is established, and the numerical simulation calculation results are used to verify the availability of the new model. The prediction results agree well with the numerical simulation results, and the model reflects the continued development of surface subsidence basin over time, which is expected to provide some insight into the prediction and visualization research on surface subsidence of salt rock storage.

Rainfall-Runoff Analysis using SURR Model in Imjin River Basin

  • Linh, Trinh Ha;Bae, Deg-Hyo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.439-439
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    • 2015
  • The temporal and spatial relationship of the weather elements such as rainfall and temperature is closely linked to the streamflow simulation, especially, to the flood forecasting problems. For the study area, Imjin river basin, which has the specific characteristics in geography with river cross operation between North and South Korea, the meteorological information in the northern area is totally deficiency, lead to the inaccuracy of streamflow estimation. In the paper, this problem is solved by using the combination of global (such as soil moisture content, land use) and local hydrologic components data such as weather data (precipitation, evapotranspiration, humidity, etc.) for the model-driven runoff (surface flow, lateral flow and groundwater flow) data in each subbasin. To compute the streamflow in Imjin river basin, this study is applied the hydrologic model SURR (Sejong Univ. Rainfall-Runoff) which is the continuous rainfall-runoff model used physical foundations, originally based on Storage Function Model (SFM) to simulate the intercourse of the soil properties, weather factors and flow value. The result indicates the spatial variation in the runoff response of the different subbasins influenced by the input data. The dependancy of runoff simulation accuracy depending on the qualities of input data and model parameters is suggested in this study. The southern region with the dense of gauges and the adequate data shows the good results of the simulated discharge. Eventually, the application of SURR model in Imjin riverbasin gives the accurate consequence in simulation, and become the subsequent runoff for prediction in the future process.

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하천유역의 유출해석을 위한 적정소유역 분할수에 관한 연구 (Study on the Dividing Capacity of Appropriate Sub-basin for Runoff Analysis)

  • 안승섭;정도준;이효정;이증석
    • 한국환경과학회지
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    • 제17권2호
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    • pp.239-248
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    • 2008
  • The purpose of this study is to examine appropriate sub-basin division numbers that best reflect the hydrological characteristics of the basin so as to propose the criterion for dividing the sub-basin in analyzing flood runoff in the future. The characteristics of flood runoff variations were based on the WMS HEC-1 model, and the area in the upstream of the Dongbyeon water level observatory and the Geum-ho water level observatory was chosen for analysis, and examined the characteristics of the changes in flood runoff. First of all, in the targeted basin, if the sub-basin division number was 4 (that is, the area of the divided sub-basin was about 25% of the total area). Next, as the sub-basin division number gradually increased, the peak rate of runoff increased as well, and in case the sub-basin was not divided, the peak rate of runoff occurred at the earliest time. Given these results, the spatial change characteristics will be best reflected when the sub-basin is divided for analysis of flood runoff in such a way that the area of the divided sub-basin is about 25% of the total area of the basin. However, as these results are based on a limited number (4) of storms, more storm events and other basins need to be included in the review of the sub-basin division methodology.

중소하천유역의 임계지속시간 결정에 관한 연구 (Study on the Critical Storm Duration Decision of the Rivers Basin)

  • 안승섭;이효정;정도준
    • 한국환경과학회지
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    • 제16권11호
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    • pp.1301-1312
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    • 2007
  • The objective of this study is to propose a critical storm duration forecasting model on storm runoff in small river basin. The critical storm duration data of 582 sub-basin which introduced disaster impact assessment report on the National Emergency Management Agency during the period from 2004 to 2007 were collected, analyzed and studied. The stepwise multiple regression method are used to establish critical storm duration forecasting models(Linear and exponential type). The results of multiple regression analysis discriminated the linear type more than exponential type. The results of multiple linear regression analysis between the critical storm duration and 5 basin characteristics parameters such as basin area, main stream length, average slope of main stream, shape factor and CN showed more than 0.75 of correlation in terms of the multi correlation coefficient.

물리적기반의 분포형모형을 활용한 임진강유역 홍수유출모의 (Flood Runoff Simulation Using Physical Based Distributed Model for Imjin-River Basin)

  • 박진혁;허영택
    • 한국수자원학회논문집
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    • 제42권1호
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    • pp.51-60
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    • 2009
  • 임진강유역은 유역의 2/3가 북한에 위치하고 있어 신뢰성 있는 강우 및 수문정보를 획득할 수 없었다는 점이 지금까지 홍수 피해를 가중시킨 요인 중의 하나로 지적되어 왔다. 본 연구에서는 상습적으로 홍수피해를 겪고 있는 임진강유역의 홍수피해를 경감하기 위한 노력의 일환으로서 임진강유역에 설치된 수문레이더를 활용하여 임진강 수계 전체에 대한 홍수유출을 모의하고자 하였다. 강우 및 최근 토양자료 등의 수문자료 확보가 곤란한 유역에 대하여 자체 개발한 분포형모형의 적용 가능성을 검토하였다. 수문곡선 결과 가용자료의 부족으로 인해 부분적으로 관측값과 불일치하는 경우도 있었지만, 첨두유량 및 전체적인 패턴은 비교적 양호한 결과를 보여줌으로써 실무적용가능성을 확인할 수 있었다.

Maxent 모형을 이용한 서식지 잠재력 평가 - 하천으로부터의 거리, 하천의 차수, 토지이용을 중심으로- (Habitat Potential Evaluation Using Maxent Model - Focused on Riparian Distance, Stream Order and Land Use -)

  • 이동근;김호걸
    • 한국환경복원기술학회지
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    • 제13권6호
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    • pp.161-172
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    • 2010
  • As the interest on biodiversity has increased around the world, researches about evaluating potential for habitat are also increasing to find and comprehend the valuable habitats. This study focus on comprehending the significance of stream in evaluating habitat's potential. The purpose of this study is to evaluate habitat potential with applying stream as a main variable, and to comprehend the relationship between the variables and habitat potential. Basin is a unit that has hydrological properties and dynamic interaction with ecosystem. Especially, biodiversity and suitability of habitat in basin area has direct correlation with stream. Existing studies also are proposing for habitat potential evaluation in basin unit, they applied forest, slope and road as main variables. Despite stream is considered the most important factor in basin area, researchers haven't applied stream as a main variable. Therefore, in this study, three variables that can demonstrate hydrological properties are selected, which are, riparian distance, stream order and land use disturbance, and evaluate habitat potential. Habitat potential is analyzed by using Maxent (Maximum entropy model), and vertebrate's presence data is used as dependent variables and stream order map and land cover map is used as base data of independent variables. As a result of analysis, habitat potential is higher at riparian and upstream area, and lower at frequently disturbed area. Result indicates that adjacent to stream, upstream, and less disturbed area is the habitat that vertebrate prefer. In particular, mammals prefer adjacent area of stream and forest and reptiles prefer upriver area. Birds prefer adjacent area of stream and midstream and amphibians prefer adjacent area of stream and upriver. The result of this research could help to establish habitat conservation strategy around basin unit in the future.

Water Resources Management Challenge in the Citarum River Basin, Indonesia

  • Wicaksono, Albert;Yudianto, Doddi;Jeong, Gimoon;Kang, Doosun
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2016년도 학술발표회
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    • pp.198-198
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    • 2016
  • The Citarum River Basin is the biggest river basin in West Java Province, Indonesia and it plays strategic roles in providing water for irrigation, domestic and industrial uses, and power generation, besides controlling the flood during rainy season. Flowing through seven major cities makes the river flow and water demand are vulnerable to land use change around the river. The present water resources management has involved the regulator, operator, and users in deciding an appropriate water management plan for the entire basin. The plan includes an operation plan for three reservoirs, construction or maintenance of the river channel, and water allocation for all users along the river. Following this plan, a smaller operation group will execute and evaluates the plan based on the actual flow condition. Recently, a deforestation, environment degradation, river sedimentation, a rapid growth of population and industry, also public health become new issues that should be considered in water basin planning. Facing these arising issues, a new development program named ICWRMIP was established to advance the existing management system. This program includes actions to strengthen institutional collaboration, do the restoration and conservation of the river environment, improve water quality and public health, also advance the water allocation system. At present, the water allocation plan is created annually based on a forecasted flow data and water usage prediction report. Sometimes this method causes a difficulty for the operator when the actual flow condition is not the same as the prediction. Improving existing system, a lot of water allocation studies, including a development of the database and water allocation simulation model have been placed to help stakeholders decide the suitable planning schemes. In the future, this study also tries to contribute in advancing water allocation planning by creating an optimization model which ease stakeholders discover a suitable water allocation plan for individual users.

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Numerical and experimental investigation on the global performance of a novel design of a Low Motion FPSO

  • Peng, Cheng;Mansour, Alaa M.;Wu, Chunfa;Zuccolo, Ricardo;Ji, Chunqun;Greiner, Bill;Sung, Hong Gun
    • Ocean Systems Engineering
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    • 제8권4호
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    • pp.427-439
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    • 2018
  • Floating Production Storage and Offloading (FPSO) units have the advantages of their ability to provide storage and offloading capabilities which are not available in other types of floating production systems. In addition, FPSOs also provide a large deck area and substantial topsides payload capacity. They are in use in a variety of water depths and environments around the world. It is a good solution for offshore oil and gas development in fields where there is lack of an export pipeline system to shore. However due to their inherently high motions in waves, they are limited in the types of risers they can host. The Low Motion FPSO (LM-FPSO) is a novel design that is developed to maintain the advantages of the conventional FPSOs while offering significantly lower motion responses. The LM-FPSO design generally consists of a box-shape hull with large storage capacity, a free-hanging solid ballast tank (SBT) located certain distance below the hull keel, a few groups of tendons arranged to connect the SBT to the hull, a mooring system for station keeping, and a riser system. The addition of SBT to the floater results in a significant increase in heave, roll and pitch natural periods, mainly through the mass and added mass of the SBT, which significantly reduces motions in the wave frequency range. Model tests were performed at the Korea Research Institute of Ships & Ocean Engineering (KRISO) in the fall of 2016. An analytical model of the basin model (MOM) was created in Orcaflex and calibrated against the basin-model. Good agreement is achieved between global performance results from MOM's predictions and basin model measurements. The model test measurements have further verified the superior motion response of LM-FPSO. In this paper, numerical results are presented to demonstrate the comparison and correlation of the MOM results with model test measurements. The verification of the superior motion response through model test measurements is also presented in this paper.